Showing posts with label University of Illinois. Show all posts
Showing posts with label University of Illinois. Show all posts

Saturday, 12 February 2011

POVERTY: Seaweed study boosts prospects for marine biofuels

James Dacey : 3 February 2011
Seaweed Could seaweed one day be used to make biofuels? Flickr/Bolt of Blue

Seaweed biofuel farms have come a step closer to reality with an improvement in the way seaweed sugars can be converted to ethanol.
Dried seaweed can be fermented to produce ethanol but breaking down galactose, the dominant sugar in seaweed, is a slow process.
Now, researchers have modified the expression of three genes of the yeast Saccharomyces cerevisiae, which is used in the fermentation process to break down sugars to ethanol. The improved strain creates more enzymes, leading to a 250 per cent increase in the rate of galactose sugar fermentation compared with a control strain, according to a paper in the current issue of Biotechnology and Biongineering (March).
Yong-Su Jin, one of the study's authors, and a researcher at the University of Illinois at Urbana-Champaign, United States, told SciDev.Net that his group will now explore the feasibility of harvesting and fermenting seaweed on large scales, which may involve cultivating plants along arrays of floats to ensure they receive enough sunlight.
Seaweed can produce biofuels in a more environmentally sustainable way than land-based crops, as it does not require fresh water or fertilisers, and it could potentially provide income for people in the small island nations of South-East Asia.
One problem facing land-based biofuel crops — such as rapeseed in Europe and palm oil in South-East Asia — is food security, as they may use land that could instead be used to grow food crops. They also require vast amounts of water at a time when water supply systems are becoming increasingly strained.
"The natural, obvious choice [for biofuels] is marine biomass," said Jin, adding that seaweed is abundant near shorelines and is already harvested by many nations for food and medicine.
It could also act as a sink for excess nutrients from nearby fish farms, according to Peter Schiener, who works on BioMara, a UK–Irish project seeking to demonstrate the feasibility of marine biofuels.
"Improvement of the conversion rate from galactose to ethanol certainly helps in increasing yields and making the whole process more economical," said Schiener.
Any country with a coastline could exploit marine biomass as a fuel resource, he added. "Nations such as Chile, Brazil, India and China certainly have something to offer here."
But Paul Dupree, a biofuels specialist at the University of Cambridge, United Kingdom, warned that practical challenges lie ahead.
"Sea-based farming may have the benefit of not competing for land and water supply with farming for food. [But] it has the disadvantage of being costly, due to the difficulty of maintaining and harvesting seaweed in ocean waters."
http://www.scidev.net/en/news/seaweed-study-boosts-prospects-for-marine-biofuels.html

Wednesday, 26 January 2011

BIOTERRORISM: Scientists Investigate Potential Ebola Countermeasure

Jan. 21, 2011
Scientists with the University of Illinois at Chicago published a study this month on a class of tiny molecules that apparently adhere to the Ebola virus, seemingly preventing the potential bioterrorism agent from entering and infecting human cells
Previously examined materials "appear to exert their effects by altering the cells' response to the virus once it's entered the cell -- by which time it's too late," according to chemistry professor Duncan Wardrop, one author of the analysis published in the Journal of Medicinal Chemistry.
The scientists conducted their study of more than 230 compounds using a nonlethal virus with the protein coat of Ebola.
"We found that our lead compound also inhibits Marburg," Wardrop said, referring to another highly deadly agent suitable for an act of bioterrorism. "That was a nice surprise. There's growing evidence the two viruses have the same cell-entry mechanism, and our observations appear to point to this conclusion."
Animal trials would be necessary to further assess the effectiveness of the molecules.
The newly published study could shed new light on the means by which the Ebola and Marburg viruses penetrate human cells, possibly aiding "development of new antiviral agents," Wardrop added (University of Illinois at Chicago release, Jan. 19).
http://www.globalsecuritynewswire.org/gsn/nw_20110121_5351.php